One embodiment of an exhaust system support assembly formed in accordance with the present disclosure includes a wishbone link (10) that couples an exhaust member (26) to a vehicle (56) The wishbone link includes a leg (12) branching into a first arm (14) and a second arm (16) A first pivot assembly (20) pivotally couples the first arm (14) to the exhaust member (26), and a second pivot assembly (22) pivotally couples the second arm (16) to the exhaust member (26) A third pivot assembly (24) pivotally couples the leg (12) to the vehicle (56) so that the wishbone link (10) is movable in two or more degrees of freedom relative to the vehicle (56).
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22. An exhaust system support assembly for coupling an exhaust member to a vehicle comprising:
(a) a wishbone link having a leg branching into a first arm and a second arm;
(b) means for pivotally coupling the first arm to the exhaust member;
(c) means for pivotally coupling the second arm to the exhaust member; and
(d) means for pivotally coupling the leg to the vehicle so that the wishbone link is movable in two or more degrees of freedom relative to the vehicle.
9. An exhaust system support assembly for coupling an exhaust member to a vehicle comprising:
(a) a wishbone link having a leg branching into a first arm and a second arm;
(b) a first heim joint for pivotally coupling the first arm to the exhaust member;
(c) a second heim joint for pivotally coupling the second arm to the exhaust member; and
(d) a third heim joint for pivotally coupling the leg to the vehicle so that the wishbone link is movable in two or more degrees of freedom relative to the vehicle.
14. A method for coupling an exhaust member to a vehicle, the method comprising:
(a) providing a wishbone link having a leg branching into a first arm and a second arm;
(b) pivotally coupling the first arm to the exhaust member with a first pivot assembly;
(c) pivotally coupling the second arm to the exhaust member with a second pivot assembly; and
(d) pivotally coupling the leg to the vehicle with a third pivot assembly so that the wishbone link is movable in two or more degrees of freedom relative to the vehicle.
1. An exhaust system support assembly for coupling an exhaust member to a vehicle comprising:
(a) a wishbone link having a leg branching into a first arm and a second arm;
(b) a first pivot assembly for pivotally coupling the first arm to the exhaust member;
(c) a second pivot assembly for pivotally coupling the second arm to the exhaust member; and
(d) a third pivot assembly for pivotally coupling the leg to the vehicle so that the wishbone link is movable in two or more degrees of freedom relative to the vehicle.
2. The exhaust system support assembly of
3. The exhaust system support assembly of
4. The exhaust system support assembly of
5. The exhaust system support assembly of
a vehicle mounting bracket couplable to the exhaust system support assembly via the third pivot assembly; and
means for mounting the bracket to the vehicle.
6. The exhaust system support assembly of
7. The exhaust system support assembly of
an exhaust member mounting bracket couplable to the first and second pivot assemblies; and
at least one exhaust member mounting assembly for coupling the exhaust member mounting bracket to the exhaust member.
8. The exhaust system support assembly of
10. The exhaust system support assembly of
a vehicle mounting bracket couplable to the exhaust system support assembly via the third heim joint; and
means for mounting the bracket to the vehicle.
11. The exhaust system support assembly of
12. The exhaust system support assembly of
an exhaust member mounting bracket couplable to the first and second pivot assemblies; and
at least one exhaust member mounting assembly for coupling the exhaust member mounting bracket to the exhaust member.
13. The exhaust system support assembly of
18. The method of
a vehicle mounting bracket couplable to the exhaust system support assembly via the third pivot assembly; and
means for mounting the bracket to the vehicle.
19. The method of
20. The method of
providing an exhaust member mounting bracket couplable to the first and second pivot assemblies; and
providing at least one exhaust member mounting assembly for coupling the exhaust member mounting bracket to the exhaust member.
21. The method of
23. The exhaust system support assembly of
24. The exhaust system support assembly of
25. The exhaust system support assembly of
26. The exhaust system support assembly of
a vehicle mounting bracket couplable to the exhaust system support assembly via the third pivot assembly; and
means for mounting the bracket to the vehicle.
27. The exhaust system support assembly of
28. The exhaust system support assembly of
an exhaust member mounting bracket couplable to the first and second pivot assemblies; and
at least one exhaust member mounting assembly for coupling the exhaust member mounting bracket to the exhaust member.
29. The exhaust system support assembly of
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The present application relates generally to a support device for vehicle exhaust systems, and more specifically to a retention linkage for coupling a vertical exhaust system to a vehicle.
Semi-trailer trucks typically include at least one vertical exhaust stack positioned rear of the truck cab or alongside the truck cab. The vertical exhaust stack is normally secured to the truck by an exhaust system support assembly, which secures the exhaust pipe of the exhaust stack to the surface of the truck cab. Other portions of the exhaust system are attached to the frame of the vehicle. Because the truck cab is moveably suspended upon the frame of the vehicle, when the semi-trailer truck is in motion, there is necessarily movement between the exhaust stack and the cab. An inefficient exhaust system support assembly results in the motion of the cab being restricted at the extreme positions of cab movement during jounce and rebound. This restriction can cause the exhaust system support assembly to be torn away from the truck cab when the truck cab moves independently of the exhaust stack. Moreover, when the vibration from the truck cab transmits directly to the exhaust stack connection, the connection can loosen and fail over time.
Operators of semi-trailer trucks would find desirable an exhaust system support assembly that allows for a sufficient range of motion between the truck cab and exhaust system, that reduces vibration and noise generated by the moving components of the assembly, and that is durable and long-lasting.
An exhaust system support assembly formed in accordance with the present disclosure secures a vertical exhaust stack to a truck cab while providing an adequate range of motion, reduced vibration and noise, and is durable and long lasting.
In one embodiment, an exhaust system support assembly formed in accordance with the present disclosure includes a wishbone link that couples an exhaust member to a vehicle. The wishbone link includes a leg branching into a first arm and a second arm with a first pivot assembly pivotally coupling the first arm to the exhaust member, and a second pivot assembly pivotally coupling the second arm to the exhaust member. A third pivot assembly pivotally couples the leg to the vehicle so that the wishbone link is movable in two or more degrees of freedom relative to the vehicle.
The foregoing aspects and many of the attendant advantages of this application will become more readily appreciated as the same become better understood by reference to the following detailed description, when taken in conjunction with the accompanying drawings, wherein:
Referring to
Vertical exhaust system 11 includes an engine exhaust pipe 64 positioned below the truck cab 56. Engine exhaust pipe 64 is positioned above and coupled to the truck frame. One end of engine exhaust pipe 64 is coupled to one end of engine exhaust pipe elbow 66. A vertically oriented muffler 68 is positioned above and coupled to the other end of engine exhaust pipe elbow 66. An exhaust stack 26, which is a cylindrical outlet port for gases exiting muffler 68, is positioned above and coupled to the end of muffler 68 opposite elbow 66. Exhaust muffler 68 and exhaust stack 26 may be positioned in a vertical orientation rear of truck cab 56 or alongside truck cab 56. For ease of illustration and clarity, only exhaust muffler 68 and stack 26 positioned vertically and alongside truck cab 56 will be described, but it should be appreciated that three-point retention linkage 9 will similarly work for a vertical exhaust system positioned rear of truck cab 56.
Exhaust stack 26 is coupled to the truck cab 56 using three-point retention linkage 9 as described below. Referring to
Now referring specifically to
Referring to
The cylindrical opening 35 is non-threaded to receive a partially non-threaded bolt 39. The bolt 39 passes through the spherical bearing 38 and thereafter through an opening in the exhaust member mounting bracket 18 to secure the arms 14 and 16 to the exhaust member mounting bracket 18 as described in more detail below. The bolt 39 includes a threaded end portion for receiving a nut. The bolt 39 is passed through the spherical bearing 38 so that the non-threaded portion of the bolt 39 is positioned within the cylindrical opening 35, and the threaded portion of the bolt 39 passes through the exhaust member mounting bracket 18. After passing through the exhaust member mounting bracket 18, the threaded end portion of bolt 39 receives a washer and nut to secure the spherical bearing 38 and circular head 40 to the exhaust member mounting bracket 18.
It can be appreciated that heim joints 20 and 22 may instead be coupled to the exhaust member mounting bracket 18 by passing a fully-threaded bolt through each spherical bearing 38 to receive a washer and nut. Alternatively, rods may be coupled to the lateral projecting portions 46 of the exhaust member mounting bracket 18 such that the rods may be received within the spherical bearings 38, and a clip or other fastener may thereafter be secured on the rod end. Both alternatives may use a spherical bearing, a cylindrical bearing, or another suitable bearing.
The partially threaded bolt 39 is rotatably secured within the spherical bearing 38 so that the enlarged circular head 40 may rotate about the spherical bearing 38, and the spherical bearing 38 may rotate about the bolt 39. Thus, the heim joints 20 and 22 allow the arms 14 and 16 to rotate about the longitudinal axis passing through the center of rods 39. However, for ease of illustration and clarity, the rotational movement of the circular head 40 will hereinafter be illustrated as the circular head 40 rotating about the spherical bearing 38 without the spherical bearing 38 also rotating about the bolt 39. In the alternative, a longer partially non-threaded bolt 39 and/or a narrower exhaust member mounting bracket 18 and/or a wishbone link 10 with a wider U-shaped portion 32 may be used so that the bolt 39 is slidably coupled within the spherical bearing 38. In this manner, the spherical bearing 38 slides along the bolt 39, and the bolt 39 slides within the spherical bearing 38. Thus, the enlarged circular head 40 rotates about the spherical bearing 38 while also being slidably translated along the bolt 39 through the spherical bearing 38. In this alternative embodiment, the heim joints 20 and 22 allow the arms 14 and 16 to rotate about the longitudinal axis passing through the center of rods 39, and they also allow the arms 14 and 16 to slide horizontally along the longitudinal axis passing through the center of rods 39. In this alternative configuration, the third heim joint 24 may be restricted in horizontal movement without compromising the movement of the wishbone link 10. For instance, the third heim joint 24 may be restricted by disposing spacers between the third heim joint 24 and the orthogonal plates 54a and 54b or by positioning the orthogonal plates 54a and 54b closer to one another on the vehicle mounting bracket 30.
The leg 12 includes an enlarged portion 15 of the wishbone link 10 with threaded receiving hole 13. The center axis of hole 13 extends in the same general direction as the axis of openings 37. The receiving hole 13 may receive the threaded shaft 36 of a third heim joint 24 so that the enlarged portion 15 and threaded shaft 36 cooperatively form leg 12. In an alternate embodiment, the receiving hole 13 may receive an extension shaft (not shown), wherein the extension shaft is coupled to the threaded shaft 36 of the third heim joint 24. The extension shaft may be used to modify the size of the wishbone link 10 to fit between any truck cab/vertical exhaust system assemblies. In yet another embodiment, the threaded shaft 36 or extension shaft may be formed as an integral part of the wishbone link 10.
Continuing to refer to
The bolt 42 includes a threaded end portion that is adapted to receive a nut. The threaded portion of bolt 42 passes through the spherical bearing 38 and thereafter through an opening in the vehicle mounting bracket 30 to receive the nut. The bolt 42 therefore secures the leg 12 to the vehicle mounting bracket 30. The third heim joint 24, however, allows the leg 12 to move in two or more degrees of freedom with respect to the vehicle mounting bracket 30. The third heim joint 24 is preferably made of steel or aluminum, but other materials of sufficient strength and durability may also be appreciated.
The wishbone link 10 is pivotally connected to the tractor cab 56 through the vehicle mounting assembly 29, which includes a vehicle mounting bracket 30. The vehicle mounting bracket 30 is preferably made of steel or aluminum, but other materials of sufficient strength and durability may also be appreciated. The vehicle mounting bracket 30 includes a mounting plate 52 and orthogonal plates 54a and 54b extending from mounting plate 52. The orthogonal plates 54a and 54b are coupled to the mounting plate 52 so that a portion of the mounting plate 52 extends laterally of the orthogonal plates 54a and 54b to form first and second lateral edge portions 58 and 60. The orthogonal plates 54a and 54b are preferably triangular-shaped; however, it can be appreciated that the orthogonal plates 54a and 54b may instead take the form of another polygonal shape, such as a rectangle.
Referring to
Referring back to
Referring to
The lateral projecting portions 46 are preferably formed on the exhaust member mounting bracket 18 by bending the lateral edges of the mounting portion 44 generally 90 degrees. Thus, the lateral projecting portions 46 are generally formed orthogonal to the mounting portion 44. Moreover, the mounting portion 44 and lateral projecting portions 46 are preferably formed from one piece of sheet metal. However, it can be appreciated that the exhaust member mounting bracket 18 may be formed from more than one piece of material, wherein the mounting portion 44 and lateral projecting portions 46 are mated together to cooperatively form the exhaust member mounting bracket 18.
Referring to
Referring back to
As described with respect to
Referring to
Now referring to
Referring additionally to
Likewise, when the truck cab 56 rotates about its center longitudinal axis B, the wishbone link 10 may pivot about the third heim joint 24 to maintain its rotational position in alignment with the exhaust stack 26. If the truck cab 56 rotates about axis B in the counterclockwise direction, the vehicle mounting plate 30 and bolt 42 also rotate counterclockwise. The bolt 42 causes the spherical bearing 38 to rotate counterclockwise. The circular head 40 of the third heim joint 24 is held in a substantially stationary position by the leg 12 of the wishbone link 10 since the wishbone link 10 is coupled to the stationary exhaust stack 26. Therefore, the spherical bearing 38 rotates counterclockwise within the circular head 40, allowing the bolt 42, vehicle mounting plate 30 and truck cab 56 to rotate counterclockwise. Thus, the wishbone link 10 pivots about the third heim joint 24 to maintain the same rotational position as the exhaust stack 26.
While the preferred embodiment of the invention has been illustrated and described, it will be appreciated that various changes can be made therein without departing from the spirit and scope of the invention.
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Executed on | Assignor | Assignee | Conveyance | Frame | Reel | Doc |
Jan 18 2006 | CONNELLY, WILLIAM R | PACCAR Inc | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 017131 | /0798 | |
Jan 24 2006 | PACCAR Inc | (assignment on the face of the patent) | / |
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